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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Transparent Woody Film Made by Dissolution of Finely Divided Japanese Beech in Formic Acid at Room Temperature
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Transparent Woody Film Made by Dissolution of Finely Divided Japanese Beech in Formic Acid at Room Temperature

机译:透明木质膜通过在室温下甲酸的细碎日本山毛榉溶解制成

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摘要

src="http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/ascecg/2017/ascecg.2017.5.issue-12/acssuschemeng.7b02839/20171128/images/medium/sc-2017-02839r_0009.gif">A new transparent flat woody film was developed by direct dissolution of finely divided Japanese beech wood in formic acid at room temperature for 4?7 days and subsequent slow evaporation of the solvent on a substrate. The obtained woody film was bendable and foldable without breaking (it could be used for origami) and had a relatively high Young’s modulus and tensile strength. The thermal analyses showed that the woody film was mechanically and thermally stable even at relatively high temperatures and can be utilized up to 180 °C without softening. The film absorbed almost the same amount of water as that absorbed by the cellulose film and had very high biodegradability, which was comparable with that of cellulose. The film was prepared without removing any constituents from wood and using a very simple processing method. We think that this work opens the way for the production of biodegradable and sustainable “molded wood” materials.
机译:src =“http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/ascecg/2017/ soScecg.2017.5.issue-12/acssuschemeng.7b028/images/medium/sc -2017-02839R_0009.GIF“>通过在室温下在甲酸中直接溶解在室温下进行4μS甲酸的直接溶解,随后在基材上缓慢蒸发溶剂的新透明平面木质薄膜。所得的木质膜是可弯曲和可折叠而不破碎(可用于折纸)并且具有相对较高的杨氏模量和拉伸强度。热分析表明,即使在相对高的温度下,木质膜也可以机械地和热稳定,并且可以在不软化的情况下使用高达180℃。该膜吸收几乎与纤维素膜吸收的水量几乎相同的水,并且具有非常高的生物降解性,其与纤维素相当。制备薄膜,而不从木材中除去任何成分,并使用非常简单的加工方法。我们认为这项工作为生产可生物降解和可持续的“模制木材”材料开辟了道路。

著录项

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  • 作者单位

    Career Design Laboratory for Gender Equality Division of Environmental Design Graduate School of Natural Science and Technology Faculty of Natural System and Faculty of Environmental Design Institute of Science and Engineering Kanazawa University K;

    Career Design Laboratory for Gender Equality Division of Environmental Design Graduate School of Natural Science and Technology Faculty of Natural System and Faculty of Environmental Design Institute of Science and Engineering Kanazawa University K;

    Career Design Laboratory for Gender Equality Division of Environmental Design Graduate School of Natural Science and Technology Faculty of Natural System and Faculty of Environmental Design Institute of Science and Engineering Kanazawa University K;

    Career Design Laboratory for Gender Equality Division of Environmental Design Graduate School of Natural Science and Technology Faculty of Natural System and Faculty of Environmental Design Institute of Science and Engineering Kanazawa University K;

    Career Design Laboratory for Gender Equality Division of Environmental Design Graduate School of Natural Science and Technology Faculty of Natural System and Faculty of Environmental Design Institute of Science and Engineering Kanazawa University K;

    Research Institute for Sustainable Humanosphere Kyoto University Uji Kyoto 611-0011 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Cellulose; Film; Formic acid; Hemicellulose; Japanese beech; Lignin; Tensile strength; Viscoelasticity;

    机译:纤维素;薄膜;甲酸;半纤维素;日本山毛榉;木质素;拉伸强度;粘弹性;

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